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Software techniques to reduce the energy consumption of low-power devices at the limits of digital abstractions.

机译:在数字抽象的限制下降低低功耗设备能耗的软件技术。

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摘要

My thesis explores the effectiveness of software techniques that bend digital abstractions in order to allow embedded systems to do more with less energy. Recent years have witnessed a proliferation of low-power embedded devices with power ranges of few milliwatts to microwatts. The capabilities and size of the embedded systems continue to improve dramatically; however, improvements in battery density and energy harvesting have failed to mimic a Moore's law. Thus, energy remains a formidable bottleneck for low-power embedded systems.;Instead of trying to create hardware with ideal energy proportionality, my dissertation evaluates how to use unconventional and probabilistic computing that bends traditional abstractions and interfaces in order to reduce energy consumption while protecting program semantics. My thesis considers four methods that unleash energy otherwise squandered on communication, storage, time keeping, or sensing: 1) CCCP, which provides an energy-efficient storage alternative to local non-volatile storage by relying on cryptographic backscatter radio communication, 2) Half-Wits, which reduces energy consumption by 30% by allowing operation of embedded systems at below-spec supply voltages and implementing NOR flash memory error recovery in firmware rather than strictly in hardware, 3) TARDIS, which exploits the decay properties of SRAM to estimate the duration of a power failure ranging from seconds to several hours depending on hardware parameters, and 4) Nonsensors, which allow operation of analog to digital converters at low voltages without any hardware modifications to the existing circuitry.
机译:我的论文探讨了弯曲数字抽象的软件技术的有效性,以使嵌入式系统以更少的精力做更多的事情。近年来,功率范围从几毫瓦到几微瓦的低功率嵌入式设备激增。嵌入式系统的功能和规模持续不断提高。但是,电池密度和能量收集方面的改进未能模仿摩尔定律。因此,能源仍然是低功耗嵌入式系统的一个巨大瓶颈。而不是尝试创建具有理想能源比例的硬件,本文评估了如何使用非传统的概率计算来弯曲传统的抽象和接口,从而在保护的同时降低能耗程序语义。我的论文考虑了四种释放能量的方法,这些方法原本会浪费在通信,存储,时间保持或传感上:1)CCCP,它依靠加密背向散射无线通信为本地非易失性存储提供了一种节能的存储选择,2)半-Wits,通过允许嵌入式系统在低于规格的电源电压下运行并在固件而不是严格在硬件中实施NOR闪存错误恢复,从而将能耗降低了30%; 3)TARDIS,它利用SRAM的衰减特性进行估算停电的持续时间取决于硬件参数,范围从几秒到几小时不等;以及4)非传感器,可以在低电压下运行模数转换器而无需对现有电路进行任何硬件修改。

著录项

  • 作者单位

    University of Massachusetts Amherst.;

  • 授予单位 University of Massachusetts Amherst.;
  • 学科 Engineering Computer.;Computer Science.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 164 p.
  • 总页数 164
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:42:41

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